Microbial Transformation of 6-PPDQ in Surface Water, Water–Sediment, and Soil─Results from Simulation Tests with Radiolabeled Substrate

Thorsten Reemtsma; Bettina Seiwert; Pete Yeomans; Rory Mumford; Sara Bennett

Share:

Share:

Location

ACS Environmental Au

Abstract

6-PPDQ, an oxidation product of the antioxidant 6-PPD added to tire rubber, reaches the environment with tire abrasion on roads. Firm data on the environmental persistence of 6-PPDQ in different compartments is lacking. The microbial degradation of 6-PPDQ was studied in simulation tests under standardized conditions in the laboratory. Biodegradation half-life of 6-PPDQ (DT50) increased from surface water (12–17 d) over water-sediment systems including nonextractable residue (NER I) under aerobic conditions (46–55 d), soils including NER I under aerobic conditions (27–141 d, median 61 d), water–sediment systems under anaerobic conditions (140–202 d) to soil under anaerobic conditions (214–887 d, >10 000 d in one model). On this basis, 6-PPDQ would be considered nonpersistent according to ECHA’s definition under aerobic conditions in water, in water–sediment systems, and in soil (median value and three of the four tested soils). 34% of the applied radioactivity (AR) of [14C]-6-PPDQ was mineralized under aerobic conditions in 60 d in surface water, 27% in the water–sediment system in 100 d and 34% in soil in 120 d. Under anaerobic conditions, mineralization was 4%–5% AR, only, both in water–sediment and in soil. Hydroxylated and carboxylated 6-PPDQ were identified as transformation products, of which 11% AR remained after 60 d. In sediment and soil no single transformation product exceeded 1% AR at the end of the experiment; instead, NERs were formed. Under aerobic conditions, 55% (water–sediment) and 49% (soil) of the AR of degraded 6-PPDQ occurred as NER; it increased to 67% (water–sediment) and 84% (soil) under anaerobic conditions. These first quantitative data on the extent and the rate of biodegradation and mineralization of 6-PPDQ help to understand the occurrence of 6-PPDQ in the environment and support environmental exposure modeling and risk assessment.

Let's make the use of biobased and recovered raw materials the new standard.

Sign up for the free newsletter to read about the latest news, upcoming events, projects and more!

Let's make the use of biobased and recovered raw materials the new standard.

Sign up for the free newsletter to read about the latest news, upcoming events, projects and more!

Let's make the use of biobased and recovered raw materials the new standard.

Sign up for the free newsletter to read about the latest news, upcoming events, projects and more!